首页  科学研究  学术论文  2016年
 
H. He, Q. X. Zhang, R. Tu, L. Y. Zhao, J. Liu and Y. M. Zhang (2016) Journal Of Hazardous Materials 320 628-634.
文章来源:SKLFS    作者:SKLFS    发布时间:2017-03-15

H. He, Q. X. Zhang, R. Tu, L. Y. Zhao, J. Liu and Y. M. Zhang (2016) Molten thermoplastic dripping behavior induced by flame spread over wire insulation under overload currents. Journal/Journal Of Hazardous Materials 320 628-634. [In English]
Web link: http://dx.doi.org/10.1016/j.jhazmat.2016.07.070
Keywords: Dripping behavior; Molten insulation; Molten drip; Overload currents; Wire fire; ELECTRICAL WIRE; SUBATMOSPHERIC PRESSURE; MICROGRAVITY; IGNITION; POLYMERS; CORE

Abstract: The dripping behavior of the molten thermoplastic insulation of copper wire, induced by flame spread under overload currents, was investigated for a better understanding of energized electrical wire fires. Three types of sample wire, with the same polyethylene insulation thickness and different core diameters, were used in this study. First, overload current effects on the transient one-dimensional wire temperature profile were predicted using simplified theoretical analysis; the heating process and equilibrium temperature were obtained. Second, experiments on the melting characteristics were conducted in a laboratory environment, including drop formation and frequency, falling speed, and combustion on the steel base. Third, a relationship between molten mass loss and volume variation was proposed to evaluate the dripping time and frequency. A strong current was a prerequisite for the wire dripping behavior and the averaged dripping frequency was found to be proportional to the square of the current based on the theoretical and experimental results. Finally, the influence of dripping behavior on the flame propagation along the energized electrical wire was discussed. The flame width, bright flame height and flame spreading velocity presented different behaviors. (C) 2016 Elsevier B.V. All rights reserved.

 
 
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H. He, Q. X. Zhang, R. Tu, L. Y. Zhao, J. Liu and Y. M. Zhang (2016) Journal Of Hazardous Materials 320 628-634.
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